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A two-step method to apply Xu-Payne multi-porosity model to estimate pore type from seismic data for carbonate reservoirs

机译:一种应用Xu-Payne多孔隙度模型的两步方法,从碳酸盐储层地震数据估算孔隙型

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摘要

Carbonate reservoirs exhibit strong heterogeneity in the distribution of pore types that can be quantitatively characterized by applying Xu-Payne multi-porosity model. However, there are some prerequisites to this model the porosity and saturation need to be provided. In general, these application conditions are difficult to satisfy for seismic data. In order to overcome this problem, we present a two-step method to estimate the porosity and saturation and pore type of carbonate reservoirs from seismic data. In step one, the pore space of the carbonate reservoir is equivalent to a single-porosity system with an effective pore aspect ratio; then, a 3D rock-physics template (RPT) is established through the Gassmann's equations and effective medium models; and then, the effective aspect ratio of pore, porosity and fluid saturation are simultaneously estimated from the seismic data based on 3D RPT. In step two, the pore space of the carbonate reservoir is equivalent to a triple-porosity system. Combined with the inverted porosity and saturation in the first step, the porosities of three pore types can be inverted from the seismic elastic properties. The application results indicate that our method can obtain accurate physical properties consistent with logging data and ensure the reliability of characterization of pore type.
机译:碳酸盐贮存器在孔隙类型的分布中表现出强烈的异质性,其通过应用XU-PAYNE多孔隙度模型可以定量地表征。然而,这种模型存在一些先决条件,需要提供孔隙率和饱和度。通常,这些应用条件难以满足地震数据。为了克服这个问题,我们提出了一种两步方法来估计来自地震数据的碳酸盐储存器的孔隙率和饱和度和孔型。在步骤1中,碳酸盐储存器的孔隙空间相当于具有有效孔径纵横比的单孔隙体系;然后,通过Gassmann的方程和有效媒介模型建立了一个3D岩石物理模板(RPT);然后,从基于3D RPT的地震数据同时估计孔隙,孔隙率和流体饱和的有效纵横比。在第二步骤中,碳酸盐储存器的孔隙空间相当于三孔隙率系统。结合第一步中的倒孔隙率和饱和度,可以从地震弹性性质中倒置三种孔隙类型的孔隙率。申请结果表明,我们的方法可以获得与测井数据一致的准确物理性质,并确保孔型表征的可靠性。

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